...
首页> 外文期刊>Canadian Journal of Forest Research >Spatial patterns of tree and shrub biomass in a deciduous forest using leaf-off and leaf-on lidar
【24h】

Spatial patterns of tree and shrub biomass in a deciduous forest using leaf-off and leaf-on lidar

机译:树木和灌木生物量的空间模式在落叶森林中使用叶子和叶子在潮羊里

获取原文
获取原文并翻译 | 示例
           

摘要

Understanding patterns of aboveground carbon storage across forest types is increasingly important as managers adapt to threats of global change. We combined field measures of aboveground biomass with lidar to model fine-scale biomass in deciduous forests located in two watersheds; one watershed was underlain by sandstone and the other by shale. We measured tree and shrub biomass across three topographic positions for both watersheds and analyzed biomass using mixed models. The watershed underlain by shale had 60% more aboveground biomass than the sandstone watershed. Although spatial patterns of biomass were different across watersheds, both had higher (between about 40% and 55%) biomass values at the toe-slope position than at the ridge-top position. To model fine-scale spatial patterns of biomass, we tested the effectiveness of leaf-on and leaf-off lidar combined with topographic metrics to develop a spatially explicit random forest model of tree and shrub biomass across both watersheds. Leaf-on variables were more important for modeling shrub biomass, while leaf-off variables were more effective at modeling tree biomass. Our model of tree and shrub biomass reflects the distribution of biomass across both watersheds at a fine scale and highlights the potential of abiotic factors such as topography and bedrock to affect carbon storage.
机译:了解跨森林类型地上碳储存的模式越来越重要,因为管理者适应全球变革的威胁。我们将地上生物质的现场措施与LIDAR结合在一起,在位于两分水岭的落叶林中模拟细尺生物量;一个分水岭是由砂岩和其他地板的下层。在使用混合模型中,我们在流域的三个地形位置测量树和灌木生物量并分析了生物量。 Shale的流域底层有60%比砂岩流域更多地上的生物量。尽管生物质的空间模式横跨流域不同,但在脚趾位置的脚趾位置均具有比在脊顶位置的脚趾位置的较高(约40%和55%)的生物质值。为了模拟生物量的微量空间模式,我们测试了叶片和叶子的叶片的有效性与地形指标相结合,在流域中开发了树木和灌木生物量的空间显式随机森林模型。叶子变量对于造型灌木生物量更为重要,而叶片变量在建模树生物质上更有效。我们的树和灌木生物量模型反映了以精细规模对流域的生物质的分布,并突出了非生物因子的潜力,如地形和基岩以影响碳储存。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号